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Analysis of formulas to calculate the AC inductance of different configurations of nonmagnetic circular conductors

机译:计算非磁性圆形导体不同配置的交流电感分析

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摘要

The inductance of single- and multi-conductors intended for electronic devices, power transmission and distribution, or grounding, lightning, and bonding systems greatly depends on the specific geometry and the supply frequency. It is also influenced by skin and proximity effects. The inductance is an important design parameter, since it significantly influences the voltage drop in the conductor, thus raising reactive power consumption and limiting the conductors' current-carrying capacity. Although there exist some internationally accepted approximated and exact formulas to calculate the AC inductance of conductors in free air, its accuracy and applicability has been seldom analyzed in detail in the technical literature, which is done in this paper. Since such formulas can be used for a wide diversity of conductors' configurations and under different operating conditions, it is highly desirable to evaluate their applicability. This evaluation is carried out by comparing the results provided by the formulas with data provided by finite-element method simulation.
机译:用于电子设备,电力传输和分配或接地,闪电和粘接系统的单个和多导体的电感大大取决于特定的几何形状和供应频率。它也受皮肤和邻近效应的影响。电感是一个重要的设计参数,因为它显着影响导体中的电压降,从而提高无功功耗并限制导体的电流承载能力。尽管存在一些国际公认的近似和精确的公式,但在自由空气中计算导体的交流电感,其准确性和适用性很少在本文中的技术文献中详细分析。由于这种配方可用于广泛的导体配置,并且在不同的操作条件下,非常希望评估其适用性。通过将公式提供的结果与由有限元方法模拟提供的数据进行比较来进行该评估。

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